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Characterizing nonlinear dynamic features of self-sustained thermoacoustic oscillations in a premixed swirling combustor

机译:在预混旋流燃烧室中的自持续热声振荡的非线性动态特征

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摘要

To meet stringent NOx emission requirements, lean premixed swirling combustion technology is widely applied in power generation and propulsion systems. However, such combustion systems are more susceptible to nonlinear combustion instability due to the fluid flow-acoustics-combustion interaction. It is typically self-exited and characterized by large-amplitude pulsating oscillations. By applying experimental measurements and theoretical modelling, we explore the rich physics of how a methane-burnt swirling flame sustains periodic pulsating combustion oscillations, and its nonlinear dynamics features via recurrence plots (RP) and 0-1 chaotic test. The effects of (1) the equivalence ratio Phi, (2) the volume flow rate V-a of inlet air and (3) the swirling number S-N are examined. Hopf Supercritical and period-doubling bifurcation behaviours are experimentally observed with increased F from lean to rich combustion. Same nonlinear features are theoretically modelled by using 'kick-oscillator' model representing combustion pulses and to capture periodic limit cycle behaviours followed by period-doubling bifurcation and transition to chaos. The deterministic or chaotic nature of the swirling combustor could be experimentally identified using classical approaches such as probability density functions (PDFs) and acoustics power spectrum in presence of combustion-sustained periodic fluctuations and 0-1 chaotic test method. When the combustor is experimentally operated under either lean (Phi = 0.6) or rich (Phi = 1.1) conditions, no self-sustained periodic acoustic fluctuations are generated. Furthermore the combustor is found to be more chaotic. The flame shapes (M- or V-shaped), colour, brightness and volumes are found to depend on S-N strongly. The present findings are physically insightful on understanding nonlinear features of swirling flow-acoustics-flame interaction.
机译:为了满足严格的NOx排放要求,精益预混旋流燃烧技术广泛应用于发电和推进系统。然而,由于流体流动声学燃烧相互作用,这种燃烧系统更容易受到非线性燃烧不稳定性的影响。它通常被自我退出并以大幅度脉动振荡为特征。通过应用实验测量和理论建模,我们探讨了甲烷燃烧旋流火焰如何维持周期性脉动燃烧振荡的丰富物理,以及其非线性动力学功能通过复发图(RP)和0-1混沌测试。 (1)效率phi,(2)入口空气和(3)的体积流量V-a的效果被检查进行旋转数S-N。 Hopf超临界和时期加倍的分叉行为是通过从瘦燃烧的浓度增加而实验观察到的。通过使用代表燃烧脉冲的“踢振荡器”模型以及捕获周期性极限循环行为,然后逐渐加倍倍增分叉和转换到混沌的周期性限制循环行为,是相同的非线性特征。旋流燃烧器的确定性或混沌性质可以在存在诸如燃烧持续的周期性波动的存在概率密度函数(PDFS)和声学功率谱之类的经典方法和0-1混沌试验方法中进行实验识别。当燃烧器在瘦(PHI <= 0.6)或富(PHI> = 1.1)条件下进行实验操作时,不会产生自我持续的周期性声波。此外,发现燃烧器更加混乱。发现火焰形状(M-OR或V形),颜色,亮度和体积依赖于S-N。本研究结果对理解旋流流动声 - 火焰相互作用的非线性特征进行了物理上富有洞察力。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|114698.1-114698.11|共11页
  • 作者单位

    Univ Canterbury Dept Mech Engn Christchurch 8041 New Zealand;

    Tsinghua Univ Sch Aerosp Engn Beijing 100084 Peoples R China;

    Univ Canterbury Dept Mech Engn Christchurch 8041 New Zealand;

    Tsinghua Univ Sch Aerosp Engn Beijing 100084 Peoples R China;

    Beijing Univ Aeronaut & Astronaut Coinnovat Ctr Adv Aeroengine Beijing 100191 Peoples R China;

    Beijing Univ Aeronaut & Astronaut Coinnovat Ctr Adv Aeroengine Beijing 100191 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nonlinear dynamics; Hopf bifurcation; Thermoacoustic instability; Chaos; Premixed combustion; 0-1 chaotic test;

    机译:非线性动力学;Hopf分叉;热声不稳定;混沌;预混燃烧;0-1混沌测试;

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